2010-06-16 Vincent Rivire <vincent.riviere@freesbee.fr>
[binutils.git] / gold / arm-reloc-property.h
blob349d8629deb8d40f0c8dcb74bb7a5cb2db5f5f3c
1 // arm-reloc-property.h -- ARM relocation properties -*- C++ -*-
3 // Copyright 2010 Free Software Foundation, Inc.
4 // Written by Doug Kwan <dougkwan@google.com>.
6 // This file is part of gold.
8 // This program is free software; you can redistribute it and/or modify
9 // it under the terms of the GNU General Public License as published by
10 // the Free Software Foundation; either version 3 of the License, or
11 // (at your option) any later version.
13 // This program is distributed in the hope that it will be useful,
14 // but WITHOUT ANY WARRANTY; without even the implied warranty of
15 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 // GNU General Public License for more details.
18 // You should have received a copy of the GNU General Public License
19 // along with this program; if not, write to the Free Software
20 // Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21 // MA 02110-1301, USA.
23 #ifndef GOLD_ARM_RELOC_PROPERTY_H
24 #define GOLD_ARM_RELOC_PROPERTY_H
26 namespace gold
28 // The Arm_reloc_property class is to store information about a paticular
29 // relocation code.
31 class Arm_reloc_property
33 public:
34 // Types of relocation codes.
35 enum Reloc_type {
36 RT_NONE, // No relocation type.
37 RT_STATIC, // Relocations processed by static linkers.
38 RT_DYNAMIC, // Relocations processed by dynamic linkers.
39 RT_PRIVATE, // Private relocations, not supported by gold.
40 RT_OBSOLETE // Obsolete relocations that should not be used.
43 // Classes of relocation codes.
44 enum Reloc_class {
45 RC_NONE, // No relocation class.
46 RC_DATA, // Data relocation.
47 RC_ARM, // ARM instruction relocation.
48 RC_THM16, // 16-bit THUMB instruction relocation.
49 RC_THM32, // 32-bit THUMB instruction relocation.
50 RC_MISC // Miscellaneous class.
53 // Types of bases of relative addressing relocation codes.
54 enum Relative_address_base {
55 RAB_NONE, // Relocation is not relative addressing
56 RAB_B_S, // Address origin of output segment of defining symbol.
57 RAB_DELTA_B_S, // Change of address origin.
58 RAB_GOT_ORG, // Origin of GOT.
59 RAB_P, // Address of the place being relocated.
60 RAB_Pa, // Adjusted address (P & 0xfffffffc).
61 RAB_TLS, // Thread local storage.
62 RAB_tp // Thread pointer.
65 // Relocation code represented by this.
66 unsigned int
67 code() const
68 { return this->code_; }
70 // Name of the relocation code.
71 const std::string&
72 name() const
73 { return this->name_; }
75 // Type of relocation code.
76 Reloc_type
77 reloc_type() const
78 { return this->reloc_type_; }
80 // Whether this code is deprecated.
81 bool
82 is_deprecated() const
83 { return this->is_deprecated_; }
85 // Class of relocation code.
86 Reloc_class
87 reloc_class() const
88 { return this->reloc_class_; }
90 // Whether this code is implemented in gold.
91 bool
92 is_implemented() const
93 { return this->is_implemented_; }
95 // If code is a group relocation code, return the group number, otherwise -1.
96 int
97 group_index() const
98 { return this->group_index_; }
100 // Whether relocation checks for overflow.
101 bool
102 checks_overflow() const
103 { return this->checks_overflow_; }
105 // Return size of relocation.
106 size_t
107 size() const
108 { return this->size_; }
110 // Return alignment of relocation.
111 size_t
112 align() const
113 { return this->align_; }
115 // Whether relocation use a GOT entry.
116 bool
117 uses_got_entry() const
118 { return this->uses_got_entry_; }
120 // Whether relocation use a GOT origin.
121 bool
122 uses_got_origin() const
123 { return this->uses_got_origin_; }
125 // Whether relocation uses the Thumb-bit in a symbol address.
126 bool
127 uses_thumb_bit() const
128 { return this->uses_thumb_bit_; }
130 // Whether relocation uses the symbol base.
131 bool
132 uses_symbol_base() const
133 { return this->uses_symbol_base_; }
135 // Return the type of relative address base or RAB_NONE if this
136 // is not a relative addressing relocation.
137 Relative_address_base
138 relative_address_base() const
139 { return this->relative_address_base_; }
141 protected:
142 // These are protected. We only allow Arm_reloc_property_table to
143 // manage Arm_reloc_property.
144 Arm_reloc_property(unsigned int code, const char* name, Reloc_type rtype,
145 bool is_deprecated, Reloc_class rclass,
146 const std::string& operation, bool is_implemented,
147 int group_index, bool checks_overflow);
149 friend class Arm_reloc_property_table;
151 private:
152 // Copying is not allowed.
153 Arm_reloc_property(const Arm_reloc_property&);
154 Arm_reloc_property& operator=(const Arm_reloc_property&);
156 // The Tree_node class is used to represent parsed relocation operations.
157 // We look at Trees to extract information about relocation operations.
158 class Tree_node
160 public:
161 typedef std::vector<Tree_node*> Tree_node_vector;
163 // Construct a leaf node.
164 Tree_node(const char* name)
165 : is_leaf_(true), name_(name), children_()
168 // Construct an internal node. A node owns all its children and is
169 // responsible for releasing them at its own destruction.
170 Tree_node(Tree_node_vector::const_iterator begin,
171 Tree_node_vector::const_iterator end)
172 : is_leaf_(false), name_(), children_()
174 for (Tree_node_vector::const_iterator p = begin; p != end; ++p)
175 this->children_.push_back(*p);
178 ~Tree_node()
180 for(size_t i = 0; i <this->children_.size(); ++i)
181 delete this->children_[i];
184 // Whether this is a leaf node.
185 bool
186 is_leaf() const
187 { return this->is_leaf_; }
189 // Return name of this. This is only valid for a leaf node.
190 const std::string&
191 name() const
193 gold_assert(this->is_leaf_);
194 return this->name_;
197 // Return the number of children. This is only valid for a non-leaf node.
198 size_t
199 number_of_children() const
201 gold_assert(!this->is_leaf_);
202 return this->children_.size();
205 // Return the i-th child of this. This is only valid for a non-leaf node.
206 Tree_node*
207 child(size_t i) const
209 gold_assert(!this->is_leaf_ && i < this->children_.size());
210 return this->children_[i];
213 // Parse an S-expression string and build a tree and return the root node.
214 // Caller is responsible for releasing tree after use.
215 static Tree_node*
216 make_tree(const std::string&);
218 // Convert a tree back to an S-expression string.
219 std::string
220 s_expression() const
222 if (this->is_leaf_)
223 return this->name_;
225 // Concatenate S-expressions of children. Enclose them with
226 // a pair of parentheses and use space as token delimiters.
227 std::string s("(");
228 for(size_t i = 0; i <this->children_.size(); ++i)
229 s = s + " " + this->children_[i]->s_expression();
230 return s + " )";
233 private:
234 // Whether this is a leaf node.
235 bool is_leaf_;
236 // Name of this if this is a leaf node.
237 std::string name_;
238 // Children of this if this a non-leaf node.
239 Tree_node_vector children_;
242 // Relocation code.
243 unsigned int code_;
244 // Relocation name.
245 std::string name_;
246 // Type of relocation.
247 Reloc_type reloc_type_;
248 // Class of relocation.
249 Reloc_class reloc_class_;
250 // Group index (0, 1, or 2) if this is a group relocation or -1 otherwise.
251 int group_index_;
252 // Size of relocation.
253 size_t size_;
254 // Alignment of relocation.
255 size_t align_;
256 // Relative address base.
257 Relative_address_base relative_address_base_;
258 // Whether this is deprecated.
259 bool is_deprecated_ : 1;
260 // Whether this is implemented in gold.
261 bool is_implemented_ : 1;
262 // Whether this checks overflow.
263 bool checks_overflow_ : 1;
264 // Whether this uses a GOT entry.
265 bool uses_got_entry_ : 1;
266 // Whether this uses a GOT origin.
267 bool uses_got_origin_ : 1;
268 // Whether this uses a PLT entry.
269 bool uses_plt_entry_ : 1;
270 // Whether this uses the THUMB bit in symbol address.
271 bool uses_thumb_bit_ : 1;
272 // Whether this uses the symbol base.
273 bool uses_symbol_base_ : 1;
274 // Whether this uses an addend.
275 bool uses_addend_ : 1;
278 // Arm_reloc_property_table. This table is used for looking up propeties
279 // of relocationt types. The table entries are initialized using information
280 // from arm-reloc.def.
282 class Arm_reloc_property_table
284 public:
285 Arm_reloc_property_table();
287 // Return an Arm_reloc_property object for CODE if it is a valid relocation
288 // code or NULL otherwise.
289 const Arm_reloc_property*
290 get_reloc_property(unsigned int code) const
292 gold_assert(code < Property_table_size);
293 return this->table_[code];
296 // Like get_reloc_property but only return non-NULL if relocation code is
297 // static and implemented.
298 const Arm_reloc_property*
299 get_implemented_static_reloc_property(unsigned int code) const
301 gold_assert(code < Property_table_size);
302 const Arm_reloc_property* arp = this->table_[code];
303 return ((arp != NULL
304 && (arp->reloc_type() == Arm_reloc_property::RT_STATIC)
305 && arp->is_implemented())
306 ? arp
307 : NULL);
310 // Return a string describing the a relocation code that is not
311 // an implemented static reloc code.
312 std::string
313 reloc_name_in_error_message(unsigned int code);
315 private:
316 // Copying is not allowed.
317 Arm_reloc_property_table(const Arm_reloc_property_table&);
318 Arm_reloc_property_table& operator=(const Arm_reloc_property_table&);
320 // The Parse_expression class is used to convert relocation operations in
321 // arm-reloc.def into S-expression strings, which are parsed again to
322 // build actual expression trees. We do not build the expression trees
323 // directly because the parser for operations in arm-reloc.def is simpler
324 // this way. Coversion from S-expressions to trees is simple.
325 class Parse_expression
327 public:
328 // Construction a Parse_expression with an S-expression string.
329 Parse_expression(const std::string& s_expression)
330 : s_expression_(s_expression)
333 // Value of this expression as an S-expression string.
334 const std::string&
335 s_expression() const
336 { return this->s_expression_; }
338 // We want to overload operators used in relocation operations so
339 // that we can execute operations in arm-reloc.def to generate
340 // S-expressions directly.
341 #define DEF_OPERATOR_OVERLOAD(op) \
342 Parse_expression \
343 operator op (const Parse_expression& e) \
345 return Parse_expression("( " #op " " + this->s_expression_ + " " + \
346 e.s_expression_ + " )"); \
349 // Operator appearing in relocation operations in arm-reloc.def.
350 DEF_OPERATOR_OVERLOAD(+)
351 DEF_OPERATOR_OVERLOAD(-)
352 DEF_OPERATOR_OVERLOAD(|)
354 private:
355 // This represented as an S-expression string.
356 std::string s_expression_;
359 #define DEF_RELOC_FUNC(name) \
360 static Parse_expression \
361 (name)(const Parse_expression& arg) \
362 { return Parse_expression("( " #name " " + arg.s_expression() + " )"); }
364 // Functions appearing in relocation operations in arm-reloc.def.
365 DEF_RELOC_FUNC(B)
366 DEF_RELOC_FUNC(DELTA_B)
367 DEF_RELOC_FUNC(GOT)
368 DEF_RELOC_FUNC(Module)
369 DEF_RELOC_FUNC(PLT)
371 static const unsigned int Property_table_size = 256;
373 // The property table.
374 Arm_reloc_property* table_[Property_table_size];
377 } // End namespace gold.
379 #endif // !defined(GOLD_ARM_RELOC_PROPERTY_H)